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Published on: September 2, 2019
Migration promotes mutator alleles in subdivided populations
Yevgeniy Raynes1, Paul D Sniegowski2, Daniel M Weinreich1
1Department of Ecology and Evolutionary Biology, Center for Computational Molecular Biology, Brown University, Providence, Rhode Island, 02906.
Abstract:
Mutator alleles that elevate the genomic mutation rate may invade nonrecombining populations by hitchhiking with beneficial mutations. Mutators have been repeatedly observed to take over adapting laboratory populations and have been found at high frequencies in both microbial pathogen and cancer populations in nature. Recently, we have shown that mutators are only favored by selection in sufficiently large populations and transition to being disfavored as population size decreases. This population size-dependent sign inversion in selective effect suggests that population structure may also be an important determinant of mutation rate evolution. Although large populations may favor mutators, subdividing such populations into sufficiently small subpopulations (demes) might effectively inhibit them. On the other hand, migration between small demes that otherwise inhibit hitchhiking may promote mutator fixation in the whole metapopulation. Here, we use stochastic, agent-based simulations and evolution experiments with the yeast Saccharomyces cerevisiae to show that mutators can, indeed, be favored by selection in subdivided metapopulations composed of small demes connected by sufficient migration. In fact, we show that population structure plays a previously unsuspected role in promoting mutator success in subdivided metapopulations when migration is rare.
Insights
Mutator alleles, which increase mutation rates, can thrive in structured populations. Subdividing populations with rare migration surprisingly favors mutator success, impacting evolution in microbes and cancer.
Area of Science:
- Evolutionary Biology
- Genetics
- Microbiology
Background:
- Mutator alleles increase genomic mutation rates and are found in microbial pathogens, cancer, and adapting lab populations.
- Mutator selection is dependent on population size, favoring them in large populations but disfavoring them in smaller ones.
Purpose of the Study:
- To investigate the role of population structure in the evolution of mutation rates.
- To determine if subdivided populations with migration can favor mutator alleles.
Main Methods:
- Stochastic, agent-based simulations.
- Evolution experiments using the yeast Saccharomyces cerevisiae.
Main Results:
- Mutators are favored by selection in subdivided metapopulations with sufficient migration.
- Population structure significantly influences mutator success, promoting their fixation in metapopulations with rare migration.
Conclusions:
- Subdivided populations with rare migration can promote the fixation of mutator alleles.
- Population structure is a critical, previously unrecognized factor in mutation rate evolution.
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